Puglisi Jose L, Wang Fei, Bers Donald M
Department of Physiology, Loyola University Chicago, 2160 S. First Avenue, Maywood, IL 60153, USA.
Prog Biophys Mol Biol. 2004 Jun-Jul;85(2-3):163-78. doi: 10.1016/j.pbiomolbio.2003.12.003.
Computer modeling of cardiac myocytes has flourished in recent years. Models have evolved from mathematical descriptions of ionic channels alone to more sophisticated formulations that include calcium transport mechanisms, ATP production and metabolic pathways. The increased complexity is fueled by the new data available in the field. The continuous production of experimental data has led to the evolution of increasingly refined descriptions of the phenomena by modelers. Integrating the numerous systems involved in cardiac myocyte homeostasis makes the use of computer models necessary due to the unreliability of intuitive approaches. However the complexity of the model should not imply a cumbersome operation of the program. As with any tool, computer models have to be easy to operate or their strength will be diminished and potential users will not benefit fully from them. The contribution of the computer modeler to their respective biological fields will be more successful and enduring if modelers devote sufficient time to implement their equations into a model with user-friendly characteristics.
近年来,心肌细胞的计算机建模蓬勃发展。模型已从仅对离子通道的数学描述演变为更复杂的公式,其中包括钙转运机制、ATP生成和代谢途径。该领域可用的新数据推动了复杂性的增加。实验数据的不断产生促使建模者对这些现象的描述越来越精细。由于直观方法的不可靠性,整合参与心肌细胞内稳态的众多系统使得计算机模型的使用成为必要。然而,模型的复杂性并不意味着程序操作繁琐。与任何工具一样,计算机模型必须易于操作,否则其优势将被削弱,潜在用户也无法充分受益。如果建模者投入足够的时间将他们的方程式实现为具有用户友好特性的模型,那么计算机建模者对各自生物学领域的贡献将更加成功和持久。